微塑料上生物膜的形成以及与抗生素、抗生素耐药基因和水生环境中病原体的相互作用

Jia Jia , Qian Liu , E. Zhao , Xin Li , Xiong Xiong , Chenxi Wu
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引用次数: 0

摘要

水生环境中的微塑料(MPs)很容易形成生物膜,生物膜可与其他环境污染物相互作用,成为微生物的庇护所。最近,许多研究对水生环境中 MP 生物膜的归宿和行为进行了调查,强调了它们在病原体和抗生素耐药基因(ARGs)向水生生物和新栖息地传播方面的作用。近几十年来,人们对 MP 生物膜在水生环境中的流行和影响进行了广泛的研究,它们在水生环境中的行为需要系统地综合最新的信息。本综述旨在揭示水生环境中 MP 生物膜的发展及其与抗生素、ARGs 和病原体的相互作用。最新研究表明,生物膜形成后,MPs 对抗生素的吸附能力增强,而且生物膜对抗生素的吸附偏向于化学吸附。生物膜中选择性地富集了 ARGs 和微生物,尤其是病原体,与周围水域中的微生物和微生物有明显不同。MP 生物膜通过水平基因转移(HGT)和垂直基因转移(VGT)促进 ARGs 的繁殖,并诱导耐抗生素病原体的出现,从而增加对水生生态系统和人类健康的威胁。本综述还提出了一些未来的研究需求和策略,以更好地了解 MP 生物膜在水生环境中诱导的抗生素耐药性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biofilm formation on microplastics and interactions with antibiotics, antibiotic resistance genes and pathogens in aquatic environment

Biofilm formation on microplastics and interactions with antibiotics, antibiotic resistance genes and pathogens in aquatic environment
Microplastics (MPs) in aquatic environments easily support biofilm development, which can interact with other environmental pollutants and act as harbors for microorganisms. Recently, numerous studies have investigated the fate and behavior of MP biofilms in aquatic environments, highlighting their roles in the spread of pathogens and antibiotic resistance genes (ARGs) to aquatic organisms and new habitats. The prevalence and effects of MP biofilms in aquatic environments have been extensively investigated in recent decades, and their behaviors in aquatic environments need to be synthesized systematically with updated information. This review aims to reveal the development of MP biofilm and its interactions with antibiotics, ARGs, and pathogens in aquatic environments. Recent research has shown that the adsorption capabilities of MPs to antibiotics are enhanced after the biofilm formation, and the adsorption of biofilms to antibiotics is biased towards chemisorption. ARGs and microorganisms, especially pathogens, are selectively enriched in biofilms and significantly different from those in surrounding waters. MP biofilm promotes the propagation of ARGs through horizontal gene transfer (HGT) and vertical gene transfer (VGT) and induces the emergence of antibiotic-resistant pathogens, resulting in increased threats to aquatic ecosystems and human health. Some future research needs and strategies in this review are also proposed to better understand the antibiotic resistance induced by MP biofilms in aquatic environments.
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来源期刊
Eco-Environment & Health
Eco-Environment & Health 环境科学与生态学-生态、环境与健康
CiteScore
11.00
自引率
0.00%
发文量
18
审稿时长
22 days
期刊介绍: Eco-Environment & Health (EEH) is an international and multidisciplinary peer-reviewed journal designed for publications on the frontiers of the ecology, environment and health as well as their related disciplines. EEH focuses on the concept of “One Health” to promote green and sustainable development, dealing with the interactions among ecology, environment and health, and the underlying mechanisms and interventions. Our mission is to be one of the most important flagship journals in the field of environmental health. Scopes EEH covers a variety of research areas, including but not limited to ecology and biodiversity conservation, environmental behaviors and bioprocesses of emerging contaminants, human exposure and health effects, and evaluation, management and regulation of environmental risks. The key topics of EEH include: 1) Ecology and Biodiversity Conservation Biodiversity Ecological restoration Ecological safety Protected area 2) Environmental and Biological Fate of Emerging Contaminants Environmental behaviors Environmental processes Environmental microbiology 3) Human Exposure and Health Effects Environmental toxicology Environmental epidemiology Environmental health risk Food safety 4) Evaluation, Management and Regulation of Environmental Risks Chemical safety Environmental policy Health policy Health economics Environmental remediation
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